Patents by Inventor Daniel A. Buttry

Daniel A. Buttry has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).

  • Patent number: 9657327
    Abstract: A method for the detection of microorganisms in a sample comprising contacting said sample with a biosensor concentration module, allowing microorganisms to grow for a first period of time and detecting growth of discrete microorganisms as an indication of the presence of said microorganisms.
    Type: Grant
    Filed: March 15, 2013
    Date of Patent: May 23, 2017
    Assignee: Accelerate Diagnostics, Inc.
    Inventors: Steven W. Metzger, David C. Howson, David A. Goldberg, Daniel A. Buttry
  • Patent number: 9580760
    Abstract: The invention includes a method of detecting the presence or absence of mold in a sample. The method can include the step of applying a sample suspected of containing the mold to a growth medium, optionally fragmenting the sample, associating the sample with a labeling agent, and detecting the presence or absence of the mold by detection of the labeling agent. The invention can also include a medium for growing mold that includes a stimulation agent.
    Type: Grant
    Filed: March 28, 2007
    Date of Patent: February 28, 2017
    Assignee: Becton, Dickinson and Company
    Inventors: Angela M. Oppedahl, Steven J. Lasky, Dylan D. Baker, Daniel Buttry, Ann M. Steger
  • Publication number: 20160049667
    Abstract: Systems and methods drawn to an electrochemical cell comprising a low temperature ionic liquid comprising positive ions and negative ions and a performance enhancing additive added to the low temperature ionic liquid. The additive dissolves in the ionic liquid to form cations, which are coordinated with one or more negative ions forming ion complexes. The electrochemical cell also includes an air electrode configured to absorb and reduce oxygen. The ion complexes improve oxygen reduction thermodynamics and/or kinetics relative to the ionic liquid without the additive.
    Type: Application
    Filed: September 23, 2015
    Publication date: February 18, 2016
    Inventors: Cody A. Friesen, Daniel BUTTRY
  • Patent number: 9184478
    Abstract: Systems and methods drawn to an electrochemical cell comprising a low temperature ionic liquid comprising positive ions and negative ions and a performance enhancing additive added to the low temperature ionic liquid. The additive dissolves in the ionic liquid to form cations, which are coordinated with one or more negative ions forming ion complexes. The electrochemical cell also includes an air electrode configured to absorb and reduce oxygen. The ion complexes improve oxygen reduction thermodynamics and/or kinetics relative to the ionic liquid without the additive.
    Type: Grant
    Filed: May 11, 2011
    Date of Patent: November 10, 2015
    Assignee: ARIZONA BOARD OF REGENTS FOR AND ON BEHALF OF ARIZONA STATE UNIVERSITY
    Inventors: Cody A. Friesen, Daniel Buttry
  • Patent number: 9056275
    Abstract: Carbon dioxide capture and release includes contacting a gas comprising carbon dioxide with a mixture comprising a precursor and a solvent and reducing the precursor to form a capture agent. The capture agent is reacted with the carbon dioxide to form a non-volatile species containing carbon dioxide. The non-volatile species is oxidized to regenerate the precursor and to release carbon dioxide. The mixture may be formed by combining the precursor and the solvent.
    Type: Grant
    Filed: August 17, 2012
    Date of Patent: June 16, 2015
    Assignee: ARIZONA BOARD OF REGENTS, A BODY CORPORATE OF THE STATE OF ARIZONA ACTING FOR AN ON BEHALF OF ARIZONA STATE UNIVERSITY
    Inventor: Daniel A. Buttry
  • Patent number: 8895255
    Abstract: The present invention relates to moving microorganisms to a surface, where they are grown in the presence and absence of antimicrobials, and by monitoring the growth of the microorganisms over time in the two conditions, their susceptibility to the antimicrobials can be determined. The microorganisms can be moved to the surface through electrophoresis, centrifugation or filtration. When the movement involves electrophoresis, the presence of oxidizing and reducing reagents lowers the voltage at which electrophoretic force can be generated and allows a broader range of means by which the target can be detected. Monitoring can comprise optical detection, and most conveniently includes the detection of individual microorganisms. The microorganisms can be stained in order to give information about their response to antimicrobials.
    Type: Grant
    Filed: February 8, 2013
    Date of Patent: November 25, 2014
    Assignee: Accelerate Diagnostics, Inc.
    Inventors: David A. Goldberg, David C. Howson, Steven W. Metzger, Daniel A. Buttry, Steven Scott Saavedra
  • Patent number: 8895197
    Abstract: The present application relates to an electrochemical metal-air cell in which a low temperature ionic liquid is used.
    Type: Grant
    Filed: May 10, 2010
    Date of Patent: November 25, 2014
    Assignee: Arizona Board of Regents for and on behalf of Arizona State University
    Inventors: Cody A. Friesen, Daniel A. Buttry
  • Publication number: 20140323340
    Abstract: The present invention relates to moving microorganisms to a surface, where they are grown in the presence and absence of antimicrobials, and by monitoring the growth of the microorganisms over time in the two conditions, their susceptibility to the antimicrobials can be determined. The microorganisms can be moved to the surface through electrophoresis, centrifugation or filtration. When the movement involves electrophoresis, the presence of oxidizing and reducing reagents lowers the voltage at which electrophoretic force can be generated and allows a broader range of means by which the target can be detected. Monitoring can comprise optical detection, and most conveniently includes the detection of individual microorganisms. The microorganisms can be stained in order to give information about their response to antimicrobials.
    Type: Application
    Filed: July 11, 2014
    Publication date: October 30, 2014
    Inventors: David A. Goldberg, David C. Howson, Steven W. Metzger, Daniel A. Buttry, Steven Scott Saavedra
  • Publication number: 20140271434
    Abstract: Carbon dioxide capture and release includes contacting a gas comprising carbon dioxide with a mixture comprising a precursor and a solvent and reducing the precursor to form a capture agent. The capture agent is reacted with the carbon dioxide to form a non-volatile species containing carbon dioxide. The non-volatile species is oxidized to regenerate the precursor and to release carbon dioxide. The mixture may be formed by combining the precursor and the solvent.
    Type: Application
    Filed: August 17, 2012
    Publication date: September 18, 2014
    Inventor: Daniel A. Buttry
  • Publication number: 20140039794
    Abstract: Methods and apparatus suitable for quickly and accurately measuring 13C levels and supporting data in an aqueous fluid reservoir. Interpreting the resulting data to indicate key factors regarding a reservoir and completion methods, including reservoir constraint, gas producibility, and completion success. A sensor and to a sensing method that evaluates the level of hydrologic constraint in aquifers occurring in unconventional reservoirs, such as shales and coals is disclosed. Specifically, Raman spectroscopy is disclosed as a sensor and a sensing method that measures the level of naturally-occurring 13C in an aqueous reservoir and compares the level of 13C to the levels typical for highly constrained and highly unconstrained reservoirs. The disclosed sensor and sensing method also monitors the level of naturally-occurring 13C in a reservoir. Also disclosed is a method of using ?13CDic to evaluate geographic areas of coal bed reservoir water having biologic methanogenic activity.
    Type: Application
    Filed: April 5, 2012
    Publication date: February 6, 2014
    Applicant: GAS SENSING TECHNOLOGY CORP.
    Inventors: John Pope, Daniel Buttry
  • Patent number: 8640771
    Abstract: Well fluids in coalbed natural gas reservoirs and other carbonaceous reservoirs are analyzed to determine production factors such as gas content, critical desorption pressure, and/or other reservoir and operational variables. In particular, the partial pressure of methane or a predictor substance, or a methane concentration, are measured and/or determined for the wells and production factors are determined therefrom.
    Type: Grant
    Filed: September 14, 2007
    Date of Patent: February 4, 2014
    Assignee: Gas Sensing Technology Corp.
    Inventors: John M. Pope, Rick Cox, Daniel Buttry
  • Patent number: 8460887
    Abstract: The present invention relates to moving microorganisms to a surface, where they are grown in the presence and absence of antimicrobials, and by monitoring the growth of the microorganisms over time in the two conditions, their susceptibility to the antimicrobials can be determined. The microorganisms can be moved to the surface through electrophoresis, centrifugation or filtration. When the movement involves electrophoresis, the presence of oxidizing and reducing reagents lowers the voltage at which electrophoretic force can be generated and allows a broader range of means by which the target can be detected. Monitoring can comprise optical detection, and most conveniently includes the detection of individual microorganisms. The microorganisms can be stained in order to give information about their response to antimicrobials.
    Type: Grant
    Filed: February 8, 2010
    Date of Patent: June 11, 2013
    Assignee: Accelerate Diagnostics, Inc.
    Inventors: David A. Goldberg, David C. Howson, Steven W. Metzger, Daniel A. Buttry, Steven Scott Saavedra
  • Patent number: 8325338
    Abstract: There is disclosed a system comprising Raman spectroscopy used to detect key characteristics of ice formation on aircraft wings and engines in real time. This disclosure provides a method and apparatus for early detection of icing. The disclosed apparatus is suitable for use in aircraft, boats, oil rigs, wind turbines, and the like.
    Type: Grant
    Filed: January 13, 2010
    Date of Patent: December 4, 2012
    Assignee: The Blue Sky Group
    Inventors: John Pope, Daniel Buttry, Arthur R. Toews
  • Publication number: 20120227960
    Abstract: Well fluids in coalbed natural gas reservoirs and other carbonaceous reservoirs are analyzed to determine production factors such as gas content, critical desorption pressure, and/or other reservoir and operational variables. In particular, the partial pressure of methane or a predictor substance, or a methane concentration, are measured and/or determined for the wells and production factors are determined therefrom.
    Type: Application
    Filed: September 14, 2007
    Publication date: September 13, 2012
    Inventors: John M. Pope, Rick Cox, Daniel Buttry
  • Publication number: 20120077206
    Abstract: A method for the detection of microorganisms in a sample comprising contacting said sample with a biosensor concentration module, allowing microorganisms to grow for a first period of time and detecting growth of discrete microorganisms as an indication of the presence of said microorganisms.
    Type: Application
    Filed: December 5, 2011
    Publication date: March 29, 2012
    Applicant: Accelr8 Technology Corporation
    Inventors: Steven W. Metzger, David C. Howson, David A. Goldberg, Daniel A. Buttry
  • Patent number: 8071319
    Abstract: A method for the detection of microorganisms in a sample comprising contacting said sample with a biosensor concentration module, allowing microorganisms to grow for a first period of time and detecting growth of discrete microorganisms as an indication of the presence of said microorganisms.
    Type: Grant
    Filed: January 28, 2008
    Date of Patent: December 6, 2011
    Assignee: Accelr8 Technology Corporation
    Inventors: Steven W. Metzger, David C. Howson, David A. Goldberg, Daniel A. Buttry
  • Publication number: 20110281184
    Abstract: Systems and methods drawn to an electrochemical cell comprising a low temperature ionic liquid comprising positive ions and negative ions and a performance enhancing additive added to the low temperature ionic liquid. The additive dissolves in the ionic liquid to form cations, which are coordinated with one or more negative ions forming ion complexes. The electrochemical cell also includes an air electrode configured to absorb and reduce oxygen. The ion complexes improve oxygen reduction thermodynamics and/or kinetics relative to the ionic liquid without the additive.
    Type: Application
    Filed: May 11, 2011
    Publication date: November 17, 2011
    Applicant: Arizona Board of Regents Acting For And on Behalf of Arizona State University
    Inventors: Cody A. FRIESEN, Daniel Buttry
  • Publication number: 20100285375
    Abstract: The present application relates to an electrochemical metal-air cell in which a low temperature ionic liquid is used.
    Type: Application
    Filed: May 10, 2010
    Publication date: November 11, 2010
    Applicant: ARIZONA BOARD OF REGENTS FOR AND ON BEHALF OF ARIZONA STATUS UNIVERSITY
    Inventors: Cody A. FRIESEN, Daniel A. BUTTRY
  • Publication number: 20100136570
    Abstract: The present invention relates to moving microorganisms to a surface, where they are grown in the presence and absence of antimicrobials, and by monitoring the growth of the microorganisms over time in the two conditions, their susceptibility to the antimicrobials can be determined. The microorganisms can be moved to the surface through electrophoresis, centrifugation or filtration. When the movement involves electrophoresis, the presence of oxidizing and reducing reagents lowers the voltage at which electrophoretic force can be generated and allows a broader range of means by which the target can be detected. Monitoring can comprise optical detection, and most conveniently includes the detection of individual microorganisms. The microorganisms can be stained in order to give information about their response to antimicrobials.
    Type: Application
    Filed: February 8, 2010
    Publication date: June 3, 2010
    Inventors: David A. Goldberg, David C. Howson, Steven W. Metzger, Daniel A. Buttry, Steven Scott Saavedra
  • Patent number: 7687239
    Abstract: The present invention relates to moving microorganisms to a surface, where they are grown in the presence and absence of antimicrobials, and by monitoring the growth of the microorganisms over time in the two conditions, their susceptibility to the antimicrobials can be determined. The microorganisms can be moved to the surface through electrophoresis, centrifugation or filtration. When the movement involves electrophoresis, the presence of oxidizing and reducing reagents lowers the voltage at which electrophoretic force can be generated and allows a broader range of means by which the target can be detected. Monitoring can comprise optical detection, and most conveniently includes the detection of individual microorganisms. The microorganisms can be stained in order to give information about their response to antimicrobials.
    Type: Grant
    Filed: July 8, 2004
    Date of Patent: March 30, 2010
    Assignee: Accelrs Technology Corporation
    Inventors: David A. Goldberg, David C. Howson, Steven W. Metzger, Daniel A. Buttry, Steven Scott Saavedra